CSH-SGFB-100-UFFR [LINX]

SMA Bulkhead Jack to U.FL Plug Cable Assembly;
CSH-SGFB-100-UFFR
型号: CSH-SGFB-100-UFFR
厂家: Linx Technologies    Linx Technologies
描述:

SMA Bulkhead Jack to U.FL Plug Cable Assembly

文件: 总6页 (文件大小:762K)
中文:  中文翻译
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Datasheet  
CSH-SGFB-ccc-UFFR  
SMA Bulkhead Jack to U.FL Plug Cable Assembly  
Linx offers cable assemblies selected for high quality,  
durability and wide bandwidth operation. Connectors  
and coaxial cable meet RoHS lead free standards  
and have been tested to meet requirements for  
corrosion resistance, vibration, mechanical and  
thermal shock.  
The CSH-SGFB-ccc-UFFR cable assembly provides  
an SMA bulkhead jack (female socket) and U.FL-type  
plug (female socket) on 100 mm or 200 mm length  
of 1.32 mm coaxial cable. The SMA connector is  
supplied with a washer and 1/4”-36UNS hex nut for  
bulkhead mounting.  
Features  
• 1.32 mm double-shielded 50 Ω coaxial cable  
• SMA jack (female socket)  
Gold plated  
Bulkhead mount  
Gold plated brass washer and 1/4”-36UNS hex nut provided  
• U.FL-type plug (female socket) compatible with:  
MHF1  
AMC  
UMCC  
Electrical Specifications  
Impedance  
50 Ω  
VSWR  
1.3 @ 6 GHz  
500 MΩ min.  
200 V AC  
Insulation Resistance  
Withstanding Voltage  
Operating Temperature Range  
-40 °C to +90 °C  
Ordering Information  
Part Number  
Description  
SMA bulkhead jack (female socket) to U.FL-type plug (female socket) on 100 mm of 1.32  
mm coaxial cable  
CSH-SGFB-100-UFFR  
CSH-SGFB-200-UFFR  
SMA bulkhead jack (female socket) to U.FL-type plug (female socket) on 200 mm of 1.32  
mm coaxial cable  
Available from Linx Technologies and select distributors and representatives.  
CSH-SGFB-ccc-UFFR  
Datasheet  
Product Dimensions  
Connector A  
8.0 mm HEX  
3
Connector B  
4
1
2
2.1 mm  
(0.08 in)  
Coaxial Cable Length  
CSH-SGFB-100-UFFR = 100.0 mm (3.94 in)  
CSH-SGFB-200-UFFR = 200.0 mm (7.87 in)  
5.9 mm  
FLAT  
1/4”-36UNS-2A  
2.6 mm  
(0.10 in)  
11.4 mm  
(0.45 in)  
Figure 1. Product Dimensions for the CSH-SGFB-ccc-UFFR Cable Assembly  
Cable Assembly Components  
Item #  
Description  
Material  
Finish  
Gold  
1
2
3
4
Connector, U.FL-type plug (female socket)  
1.32 mm double-shielded coaxial cable  
Connector, SMA bulkhead jack (female socket) hex nut and washer  
Heat Shrink Tubing  
Brass  
1.32 mm coaxial  
Brass  
Black  
Gold  
PTFE  
Black  
Connector A  
Connector B  
Fastening Type  
1/4”-36 UNS-2A threaded coupling  
0.9 N m (8.0 in lbs)  
60 lbs. min.  
Snap-on coupling  
Recommended Torque  
Coupling Nut Retention  
Connector Durability  
Weight  
500 cycles min.  
500 cycles min.  
CSH-SGFB-100-UFFR, 3.9 g (0.14 oz) CSH-SGFB-200-UFFR, 4.3 g (0.15 oz)  
Recommended Mounting  
Figure 2 shows the recommended mounting hole dimensions for the SMA connector (bulkhead) end of the  
cable assembly.  
6.0 mm  
(0.24 in)  
Ø6.5 mm  
(0.26 in)  
Figure 2. Recommended Mounting Hole Dimensions for the CSH-SGFB-ccc-UFFR Cable Assembly  
2
Datasheet  
CSH-SGFB-ccc-UFFR  
Coaxial Cable Specifications  
Inner-conductor  
Dielectric  
Outer-conductor 1  
Outer-conductor 2  
Jacket  
1.32 mm Coax  
Material  
Dimensions  
Ø0.085 mm (0.003 in)  
Ø0.70 mm (0.028 in)  
Inner-Conductor  
Dielectric  
Silver plated copper, 7 strand, 32 AWG  
FEP, clear  
Outer-Conductor 1  
Outer-Conductor 2  
Jacket  
Silver plated copper braid, 16/4/0.050, coverage 89.4%  
Silver plated copper braid, 16/4/0.050, coverage 78.4%  
FEP, black  
Ø0.75 mm (0.030 in)  
Ø0.80 mm (0.031 in)  
Ø1.32 mm (0.05 in) 0.05 mm  
1.32 mm Coaxial Cable Electrical and Physical Specifications  
Rated Temp Voltage  
Conductor Resistance  
Insulation Resistance  
Dielectric Strength  
Spark Test  
105 °C 30 V  
497 Ω/km 20 °C  
3000 M Ω-km min.  
AC 500 V/Minute  
2.5 kV  
Tensile Strength  
2500 psi min. (1.76 kg/mm2)  
Unaged  
Aged  
Elongation  
200% min.  
Insulation  
Jacket  
Tensile Strength  
Elongation  
Unaged min. 75% (168 hrs x 232 °C)  
Unaged min. 75% (168 hrs x 232 °C)  
2500 psi min. (1.76 kg/mm2)  
200% min.  
Tensile Strength  
Elongation  
Unaged  
Aged  
Tensile Strength  
Elongation  
Unaged min. 75% (168 hrs x 232 °C)  
Unaged min. 75% (168 hrs x 232 °C)  
Nominal Impedance  
Nominal Capacitance  
50 3 Ω  
96 3 pF/m  
Nominal Velocity of Propagation 69%  
VSWR (0 to 6 GHz)  
Flame Test  
1.3  
VW-1 OK  
2.0 GHz  
2.80  
4.0 mm (0.16 in)  
2.4 GHz  
3.10  
2.5 GHz  
3.15  
5.0 GHz  
4.85  
6.0 GHz  
5.20  
Attenuation (dB/1M)  
Minimum Inside Bend radius  
Packaging Information  
The CSH-SGFB-ccc-UFFR cable assembly is packaged in a clear plastic bag, in quantities of 100.  
Distribution channels may offer alternative packaging options.  
3
CSH-SGFB-ccc-UFFR  
Datasheet  
Insertion Loss  
Figure 3 shows the Insertion Loss for CSH-SGFB-100-UFFR & CSH-SGFB-200-UFFR cable assemblies.  
Insertion loss is the loss of signal power (gain) resulting from the insertion of a device in a transmission line.  
0
100 mm  
200 mm  
-1  
-2  
0
500 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000 6500 7000 7500 8000 8500  
Frequency (MHz)  
Figure 3. Insertion Loss for the CSH-SGFB-ccc-UFFR Cable Assembly  
VSWR  
Figure 4 provides the voltage standing wave ratio (VSWR) across the cable assemblys bandwidth for the  
CSH-SGFB-100-UFFR and CSH-SGFB-200-UFFR cable assemblies. VSWR describes how efficiently power  
is transmitted through the cable assembly. A lower VSWR value indicates better performance at a given  
frequency.  
2
100 mm  
200 mm  
1
0
500 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000 6500 7000 7500 8000 8500  
Frequency (MHz)  
Figure 4. VSWR for the CSH-SGFB-ccc-UFFR Cable Assembly  
4
Datasheet  
CSH-SGFB-ccc-UFFR  
Cable Assembly Definitions and Useful Formulas  
VSWR - Voltage Standing Wave Ratio. VSWR is a unitless ratio that describes how efficiently power is  
transmitted through the cable assembly. A lower VSWR value indicates better performance at a given  
frequency. VSWR is easily derived from Return Loss.  
10 Return Loss + 1  
20  
VSWR =  
10 Return Loss 1  
20  
Insertion Loss - The loss of signal power (gain) resulting from the insertion of a device in a transmission line.  
Insertion loss can be derived from the power transmitted to the load before the insertion of the component PT  
and the power transmitted to the load after the insertion of the component PR .  
(dB) = 10 log  
5
CSH-SGFB-ccc-UFFR  
Datasheet  
Website:  
Linx Offices:  
Phone:  
http://linxtechnologies.com  
159 Ort Lane, Merlin, OR, US 97532  
+1 (541) 471-6256  
E-MAIL:  
info@linxtechnologies.com  
Linx Technologies reserves the right to make changes to the product(s) or information contained herein without notice. No liability is assumed as a result of their use  
or application. No rights under any patent accompany the sale of any such product(s) or information.  
Wireless Made Simple is a registered trademark of Linx Acquisitions LLC. Other product and brand names may be trademarks or registered trademarks of their  
respective owners.  
Copyright © 2020 Linx Technologies  
All Rights Reserved  
Doc# DS20212-94CON  

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